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新型和两种已知钙通道β4 亚基剪接变体的神经元靶向差异与其对基因表达的调控相关。

Differential neuronal targeting of a new and two known calcium channel β4 subunit splice variants correlates with their regulation of gene expression.

机构信息

Department of Physiology and Medical Physics, Medical University Innsbruck, 6020 Innsbruck, Austria; Center of Physiology and Pharmacology, Department of Neurophysiology and Pharmacology, Medical University Vienna, 1090 Vienna, Austria; Division of Molecular Pathophysiology, Biocenter; Division of Molecular Biology; Biocenter; Medical University Innsbruck, 6020 Innsbruck, Austria; and Experimental and Clinical Pharmacology and Toxicology, University of Saarland, 66421 Homburg, Germany.

出版信息

J Neurosci. 2014 Jan 22;34(4):1446-61. doi: 10.1523/JNEUROSCI.3935-13.2014.

Abstract

The β subunits of voltage-gated calcium channels regulate surface expression and gating of CaV1 and CaV2 α1 subunits and thus contribute to neuronal excitability, neurotransmitter release, and calcium-induced gene regulation. In addition, certain β subunits are targeted into the nucleus, where they interact directly with the epigenetic machinery. Whereas their involvement in this multitude of functions is reflected by a great molecular heterogeneity of β isoforms derived from four genes and abundant alternative splicing, little is known about the roles of individual β variants in specific neuronal functions. In the present study, an alternatively spliced β4 subunit lacking the variable N terminus (β4e) is identified. It is highly expressed in mouse cerebellum and cultured cerebellar granule cells (CGCs) and modulates P/Q-type calcium currents in tsA201 cells and CaV2.1 surface expression in neurons. Compared with the other two known full-length β4 variants (β4a and β4b), β4e is most abundantly expressed in the distal axon, but lacks nuclear-targeting properties. To determine the importance of nuclear targeting of β4 subunits for transcriptional regulation, we performed whole-genome expression profiling of CGCs from lethargic (β4-null) mice individually reconstituted with β4a, β4b, and β4e. Notably, the number of genes regulated by each β4 splice variant correlated with the rank order of their nuclear-targeting properties (β4b > β4a > β4e). Together, these findings support isoform-specific functions of β4 splice variants in neurons, with β4b playing a dual role in channel modulation and gene regulation, whereas the newly detected β4e variant serves exclusively in calcium-channel-dependent functions.

摘要

电压门控钙通道的β亚基调节 CaV1 和 CaV2α1 亚基的表面表达和门控,从而有助于神经元兴奋性、神经递质释放和钙诱导的基因调控。此外,某些β亚基被靶向到细胞核,在细胞核中它们直接与表观遗传机制相互作用。虽然它们在多种功能中的参与反映了来自四个基因的β同工型的巨大分子异质性和丰富的可变剪接,但关于特定神经元功能中单个β变体的作用知之甚少。在本研究中,鉴定出一种缺失可变 N 末端的剪接变体β4e。它在小鼠小脑和培养的小脑颗粒细胞 (CGC) 中高度表达,并调节 tsA201 细胞中的 P/Q 型钙电流和神经元中的 CaV2.1 表面表达。与其他两种已知全长β4 变体(β4a 和β4b)相比,β4e 在远端轴突中表达最丰富,但缺乏核靶向特性。为了确定β4 亚基的核靶向对转录调控的重要性,我们对单独用β4a、β4b 和β4e 重建的昏睡(β4-缺失)小鼠的 CGC 进行了全基因组表达谱分析。值得注意的是,每个β4 剪接变体调节的基因数量与它们的核靶向特性的秩相关(β4b > β4a > β4e)。这些发现共同支持β4 剪接变体在神经元中具有特定的功能,β4b 在通道调节和基因调节中发挥双重作用,而新检测到的β4e 变体仅在钙通道依赖性功能中发挥作用。

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